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five doctoral students. https://www.timc.fr/ Activities Electropolymerise methylene blue/toluidine blue on electrodes and optimise experimental parameters (potentials, number of cycles, pH, matrices) Bio
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ceramic matrix. This work should make it possible to generate ceramic matrices whose pore network is adapted to subsequent CVI infiltration, resulting in dense PIP-CVI matrices and, consequently, CMCs with
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scale-up - Physicochemical characterization of the encapsulation matrices - Evaluation of the method on the vaccines' biophysical attributes - Interaction with national and international partners - Data
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demonstration. Specifically: • Composite demonstrators will be manufactured by embedding lignin fibers into bio-based matrices, replacing glass fibers with lighter, more sustainable reinforcements. • Filtration
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DMA and compression tests) and variations in glass transition temperature (via DSC and DMA) during repeated hydrogen cycling. As fatigue and mechanical failure in composites are mainly attributed
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tool to be developed during the project; - Experimentally characterize the performance of the membrane-based reciprocating expander coupled to the linear alternator, using compressed air at various
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redundant pixels from one image to another, i.e. if the pixel has not changed it is not stored after compression. Therefore, the scenario until now has been that redundant information is unnecessarily